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Biomedical subjects

R J Schroer

Publications and source records attributed to R J Schroer.

At least 19 recordsLinked to original sources

Longitudinal changes in cognitive and adaptive behavior scores in children and adolescents with the fragile X mutation or autism.

Studies of the relationship between the fragile X (FRAXA) mutation and autism have been controversial. Although there are differences between the two populations, individuals with FRAXA and autism exhibit remarkably similar aberrant behavior patterns. We examined comparably aged children and adolescents with FRAXA or autism to determine whether longitudinal changes in cognitive ability and adaptive behavior were similar in the two groups. We found decreases in IQ scores in young children with FRAXA as well as in those with autism. Declines in IQ scores were steeper among children with FRAXA. Older children and adolescents with autism exhibit stable test-retest scores, whereas older children with FRAXA continue to show decreases. Comparable declines in adaptive behavior composite scores were observed in both groups, at all ages tested, and across all adaptive behavior domains.

Adaptation, Psychological↗

Lack of association of the (AAAT)6 allele of the GXAlu tetranucleotide repeat in intron 27b of the NF1 gene with autism.

A novel allele of the GXAlu tetranucleotide repeat in intron 27b of the neurofibromatosis 1 (NF1) gene has recently been reported to be present in 4.7% of autistic patients but not in controls. We have found the novel GXAlu allele absent in 204 patients from the South Carolina Autism Project and 200 controls. The autism population studied includes a significant number of patients with hypotonia, stereotyped behaviors, or postural, gait, and motor abnormalities similar to those seen in the patients previously reported to possess the novel GXAlu allele. This suggests that the novel (AAAT)6 GXAlu allele is not associated with autism.

Alleles↗

The HOPA gene dodecamer duplication is not a significant etiological factor in autism.

A recent study has suggested that a dodecamer duplication in the HOPA gene in Xq13 may occur in a significant portion of male patients with autism. We have determined the incidence of this duplication in 202 patients from the South Carolina Autism Study. The incidence of the duplication was not significantly different between patients and controls. Three of the female patients inherited the duplication from nonautistic fathers. In addition, there was no systematic skewing of X inactivation in the female patients with the duplication, or in nonautistic mothers and sisters with the duplication. These findings suggest that the dodecamer duplication in the HOPA gene does not play a significant role in the etiology of autism.

Adult↗

X-linked mental retardation syndrome with short stature, small hands and feet, seizures, cleft palate, and glaucoma is linked to Xq28.

Of the gene-rich regions of the human genome, Xq28 is the most densely mapped. Mutations of genes in this band are responsible for 10 syndromal forms of mental retardation and 5 nonsyndromal forms. Clinical and molecular studies reported here add an additional syndromic form of X-linked mental retardation (XLMR) to this region. The condition comprises short stature, small hands and feet, seizures, cleft palate, and glaucoma. One affected male died at age 19 years in status epilepticus, but others have survived to old age. Carrier females do not have somatic anomalies or mental impairment. The gene is localized to the terminal 8 Mb of Xq28 with markers distal to DXS8011 showing linkage to the disorder with a lod score of 2.11 at zero recombination.

Abnormalities, Multiple↗

Autism and maternally derived aberrations of chromosome 15q.

Of the chronic mental disabilities of childhood, autism is causally least well understood. The former view that autism was rooted in exposure to humorless and perfectionistic parenting has given way to the notion that genetic influences are dominant underlying factors. Still, identification of specific heritable factors has been slow with causes identified in only a few cases in unselected series. A broad search for genetic and environmental influences that cause or predispose to autism is the major thrust of the South Carolina Autism Project. Among the first 100 cases enrolled in the project, abnormalities of chromosome 15 have emerged as the single most common cause. The four abnormalities identified include deletions and duplications of proximal 15q. Other chromosome aberrations seen in single cases include a balanced 13;16 translocation, a pericentric inversion 12, a deletion of 20p, and a ring 7. Candidate genes involved in the 15q region affected by duplication and deletion include the ubiquitin-protein ligase (UBE3A) gene responsible for Angelman syndrome and genes for three GABA(A) receptor subunits. In all cases, the deletions or duplications occurred on the chromosome inherited from the mother.

Adolescent↗

Nonsyndromic X-linked mental retardation: review and mapping of MRX29 to Xp21.

The gene responsible for nonsyndromic mental retardation in a family with 7 affected males has been localized to Xp21. The maximal two-point lod score was 3.31 for tight linkage to marker DXS1202 in Xp21.3-p22.3 with crossovers between the 3' portion of the DMD gene (DXS1234) proximally and locus DXS989 distally. The XLMR gene in this family has been assigned the designation MRX29. The localization overlaps with at least six other MRX entities linked to the distal short arm of the X chromosome.

Adult↗

Preventable fraction of mental retardation: analysis based on individuals with severe mental retardation.

Reduction in the prevalence of mental retardation has been identified as a national goal since 1971. President Nixon proposed the year 2000 as a benchmark, by which time the prevalence of severe mental retardation should be reduced by as much as 50%. An analysis to determine the fraction of severe mental retardation that could be prevented with strategies currently available indicates that the goal will not be met. Knowledge of the causes of severe mental retardation is fundamental to developing prevention strategies. Increased diagnostic capability-clinical and laboratory-must be dramatically increased if a 50% reduction in the prevalence of severe mental retardation is to be achieved in the foreseeable future.

Adolescent↗

Aarskog-Scott syndrome: confirmation of linkage to the pericentromeric region of the X chromosome.

Aarskog-Scott syndrome was tentatively mapped to Xq13 on the basis of an X:8 translocation by Bawle et al. [Am J Med Genet 17:595-602, 1984]. A review of the cytogenetics and the use of molecular markers in that family have resulted in revision of the breakpoints of the translocation to Xp 11.2 and 8q11.21 [Glover et al., Hum Mol Genet 2:1717-1718, 1993]. Two families, including one of the two initial families with Aarskog-Scott syndrome [Scott, BD:OAS VII (6): 240-246, 1971], have participated in our study to evaluate the localization of the gene for Aarskog-Scott syndrome to the pericentromeric region of the X chromosome. Using a series of DNA probes, we have been able to confirm linkage to the X chromosome, with multipoint analysis indicating the most likely localization of the gene to be on the proximal short arm.

Abnormalities, Multiple↗

Localization of branchio-oto-renal (BOR) syndrome to a 3 Mb region of chromosome 8q.

Branchio-oto-renal (BOR) syndrome is an autosomal dominant condition of branchial arch anomalies, deafness and renal dysplasia. Clinical manifestations tend to have considerable intrafamilial and interfamilial variability. Previous linkage studies had localized the gene responsible for BOR syndrome to a broad region of chromosome 8q. Using 10 microsatellite markers, we have further refined the localization of this disorder by establishing tight linkage to two markers, D8S279 and D8S530 (Zmax = 3.91 and Zmax = 2.83 respectively at theta = 0.00). These markers are within 1 cM of one another. Multipoint analysis, involving 7 loci, placed the gene between these markers, with a lod-1 confidence interval 0.7 cM proximal to D8S530 and 0.6 cM distal to D8S279.

Branchial Region↗

Inverted duplication of 8p: ten new patients and review of the literature.

We evaluated 10 patients with an inverted tandem duplication of 8p. Inverted duplications of chromosome 8 have been reported infrequently, and no syndrome has been previously identified. All 8 patients on whom birth histories were available were hypotonic at birth, and had feeding difficulties in the neonatal period. All patients have significant developmental delay. Manifestations present in 5 or more patients were prominent forehead, high arched palate, large mouth with a thin upper lip, malformed and/or apparently low-set ears, broad nasal bridge, dental and skeletal abnormalities, and joint laxity or hyperextensibility. Variation in the phenotype may, in part, be explained by the different breakpoints. Recurrence risks of de novo rearrangements are probably very low, but for the recombinants the risk may be significant. The duplication appeared to be de novo in 6 patients (both parental karyotypes were normal); maternal karyotypes were normal in 2 patients, and both parents of 1 patient were not available. One propositus had a monocentric recombinant of a paracentric inv(8) (p12p23.3) carried by the mother, and is one of only 6 known cases of duplication associated with a balanced paracentric inversion in a parent. The carrier parent was the mother in 5 of those 6 cases. Each case involved a different chromosome, and each probably was created by an unusual meiotic recombination event. Inverted duplication 8p is one of the most common duplications observed in our laboratories, and ranks in frequency with the classical deletions, such as Wolf-Hirschhorn and cri-du-chat syndromes and duplication or secondary trisomy 15q1.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Agenesis of the corpus callosum associated with MASA syndrome.

MASA syndrome includes mental retardation, adducted thumbs, shuffling gait and aphasia or speech delay. MASA syndrome, X-linked hydrocephalus and X-linked spastic paraplegia have been linked to the same markers on Xq28 and perhaps represent variation in the clinical expression of the same gene or manifestations of different mutant alleles. The present family includes five males in two generations with borderline to mild mental retardation (5/5), speech delay (5/5), spastic paraplegia (5/5), adducted thumbs (2/5) and marked hydrocephalus (1/5). Of these males, four were evaluated by MRI or CT scan and all four were determined to have partial to complete agenesis of the corpus callosum (ACC). DNA studies confirm linkage to Xq28 probe St14 (DXS52) with a lod score of 2.86 and no recombination. It is not known if X-linked ACC is linked to the same Xq28 region.

Abnormalities, Multiple↗

Detection of submicroscopic deletions in band 17p13 in patients with the Miller-Dieker syndrome.

The Miller-Dieker syndrome (MDS), a syndrome with lissencephaly, distinctive craniofacial features, growth impairment, and profound developmental failure, has been associated with a deletion of the distal part of chromosome band 17p13. A minority of patients with the syndrome do not have a deletion detectable with current cytogenetic techniques. Using three highly polymorphic DNA probes (pYNZ22, pYNH37.3, and p144D6) we have detected microdeletions in three MDS patients, two of whom had no visible abnormalities of chromosome 17. Loci defined by two of the DNA probes, pYNZ22 and pYNH37.3, were deleted in all three patients. The most distal locus, defined by p144D6, was present in one MDS patient, possibly defining the distal limits of the MDS region in band 17p13.3. None of these loci were absent in one case of lissencephaly without MDS.

Abnormalities, Multiple↗

Sialic acid storage disease with sialuria: clinical and biochemical features in the severe infantile type.

Two unrelated infants with a new disorder characterized biochemically by elevated levels of free sialic acid in urine, serum, and cell lysates have exhibited severe mental and physical impairments since the early weeks of life. Three other biochemically diagnosed cases and two possible cases from the earlier literature are reviewed to delineate this condition. Clinical features including sparse, white hair, coarse facies, hepatosplenomegaly, profound inactivity, diarrhea, and anemia permit early diagnosis of this neurovisceral storage disease. Osseous stippling may be present and clear vacuoles may be demonstrated in lymphocytes and cultured fibroblasts. The course is one of relentless deterioration with death in early childhood. Specific diagnosis depends on demonstration of elevated free sialic acid in urine and cell lysates.

Adult↗